含Cu FePt纳米颗粒的fcc降至L10有序温度

S. Yung, C. Chung, J. Ding
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引用次数: 3

摘要

以1,2-十六烷二醇为还原剂,对乙酰丙酮铂、乙酰丙酮铁和乙酰丙酮铜进行化学还原制备了(FePt)1- xcux纳米合金。所制备的颗粒具有无序的fcc结构,平均直径约为3nm。与未添加任何添加剂相比,添加4%的铜促进了无序fcc结构向有序fact相转变的效果,从而使有序温度从500℃降低到400℃。l10有序相的晶格参数变化表明,FePt有序合金的Fe位被Cu取代。(FePt)96Cu4合金纳米颗粒在450℃下退火30 min后,膜的矫顽力大于5000Oe,而含FePt纳米颗粒的膜的矫顽力约为2700Oe
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Reduction of the fcc to L10 Ordering Temperature for FePt Nanoparticles Containing Cu
(FePt)1-xCux alloy nanoparticles were prepared by chemical-reduction of platinum acetylacetonate, iron acetylacetonate and copper acetylacetonate with 1,2-hexadecanediol as the reducing regent. As prepared, the particles have a disordered fcc structure with an average diameter of ca. 3nm. The addition of 4 % copper promotes the effect that the disordered fcc structure transforms to ordered fct phase, thereby it reduces the ordering temperature from 500degC to 400degC compared with those without any additives. The lattice parameter change of the L10-ordered phase suggests that the Fe sites of FePt ordered alloy are replaced by Cu. After the (FePt)96Cu4 alloy nanoparticles being annealed at 450degC for 30 min, the coercivity of the film is more than 5000Oe, while the film containing FePt nanoparticles is about 2700Oe
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